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Ultrafiltration of natural organic matter from water by vertically aligned carbon nanotube membrane

机译:垂直排列的碳纳米管膜对水中的天然有机物进行超滤

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摘要

In this study vertically aligned carbon nanotubes (VA-CNT) was grown on anodized aluminum oxide (AAO) substrate. The synthesized AAO-CNT membrane was characterized using Raman spectroscopy, field emission scanning electron microscopy (FESEM), contact angle and BET. The pure water flux, humic acid (HA) (as representative of natural organic matters) rejection and fouling mechanism were also evaluated. The fabricated membrane has pore density of 1.3 × 1010 pores per cm2, average pore size of 20 ± 3 nm and contact angle of 85 ± 8o. A significant pure water flux of 3600 ± 100 L/m2.h was obtained at 1 bar of pressure by this membrane due to the frictionless structure of CNTs. High contact angle exhibited the hydrophobic property of the membrane. It was revealed that HA is primarily rejected by adsorption in the membrane pores due to hydrophobic interactions with HA. Flux decline occurred rapidly through both cross flow and dead end filtration of the HA. Based on the blocking laws, internal pore constriction is dominant fouling mechanism in which HA adsorbs in membrane pores results in pores blockage and flux decline.
机译:在这项研究中,垂直排列的碳纳米管(VA-CNT)在阳极氧化铝(AAO)衬底上生长。利用拉曼光谱,场发射扫描电子显微镜(FESEM),接触角和BET对合成的AAO-CNT膜进行了表征。还评估了纯水通量,腐殖酸(HA)(代表天然有机物)的排阻和结垢机理。制备的膜的孔密度为每厘米 2 1.3×10 10 孔,平均孔径为20±3 nm,接触角为85±8 o < / sup>。由于碳纳米管的无摩擦结构,该膜在1 bar的压力下获得了3600±100 L / m 2 .h的显着纯水通量。高接触角表现出膜的疏水性。结果表明,由于与HA的疏水作用,HA主要被膜孔中的吸附所排斥。通过HA的错流和死端过滤,通量下降迅速发生。根据堵塞规律,内部孔收缩是主要的结垢机理,其中HA吸附在膜孔中导致孔堵塞和通量下降。

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